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Upper mantle slab under Alaska: contribution to anomalous core-phase observations on south-Sandwich to Alaska paths

机译:在阿拉斯加的上部地幔板:对南三明治对阿拉斯加路径的对异常核心相观测的贡献

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摘要

Observations of travel time anomalies of inner core-sensitive PKPdf seismic body waves, as a function of path orientation with respect to the earth's rotation axis, have been interpreted as evidence of anisotropy in the inner core. Paths from earthquakes in the South Sandwich Islands to stations in Alaska show strongly anomalous travel times, with a large spread that is not compatible with simple models of anisotropy. Here we assess the impact of strong velocity heterogeneity under Alaska on the travel times, directions of arrival and amplitudes of PKPdf. We use 3D ray-tracing and 2.5D waveform modelling through a new, high-resolution tomography model of the upper mantle beneath Alaska. We find that the structure beneath Alaska, notably the subducting slab, is reflected in the patterns of these PKPdf observations, and this can be replicated by our model. We also find similar patterns in observed teleseismic P waves that can likewise be explained by our slab model. We conclude that at least 2 s of the travel time anomaly often attributed to inner core anisotropy is due to slab effects in the upper mantle beneath Alaska.
机译:作为关于地球旋转轴的路径取向的函数,内核敏感性PKPDF地震体波的行进时间异常的观察被解释为内芯中各向异性的证据。南三明治群岛地震到阿拉斯加站的路径显示强烈的异常旅行时间,具有大的涂抹,不兼容各向异性的简单模型。在这里,我们评估阿拉斯加的强速异质性对旅行时间,到达的方向和PKPDF的振幅的影响。我们通过Alaska下面的上部地幔的新的高分辨率断层扫描模型使用3D射线跟踪和2.5D波形模型。我们发现阿拉斯加下面的结构,特别是底板板,反映在这些PKPDF观察的模式中,并且可以通过我们的模型复制。我们还在观察到的Telesmicic P波中发现类似的模式,这些模式也可以通过我们的板式模型解释。我们得出结论,至少2秒的行程时间异常常常归因于内核各向异性,这是由于阿拉斯加下方的上部地幔中的板坯效应。

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